Chunyang Zhu’s research while affiliated with Qingdao University and other places

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Publications (5)


NTP exerts anticancer activities in GC cells in vitro. (A) The molecular structure of NTP. (B–D) AGS, HGC27, and GES1 cells were treated with different concentrations of NTP for 24 and 48 h, and their cell viability was measured using the MTT assay. (E,F) After 24 h of treatment with different concentrations of NTP, the density and morphology of AGS and HGC27 cells stained with crystal violet were observed via microscopy. Data are shown as the mean ± SD, with significant differences from the control group marked by *p < 0.05, **p < 0.01, ***p < 0.001.
NTP inhibits the proliferation and migration of GC cells. (A) Typical colony formation assays were performed on AGS and HGC27 cells after 14 days of NTP treatment. (B,C) Quantitative analysis of the information obtained at 490 nm following the dissolution of AGS and HGC27 clones in glacial acetic acid. (D–G) The percentages of AGS and HGC27 cells in the G1, S, and G2 cell cycle phases. (H–I) The outcomes of the migration assay used on AGS and HGC27 cells that were NTP-treated at different times during the length of a 24 h period. (J,K) Quantitative analysis of the scratch migration rate was performed with ImageJ software. The data are shown as the mean ± SD, with significant differences from the control group marked by *p < 0.05, **p < 0.01, ***p < 0.001.
NTP destroys the cell membrane and induces apoptosis in GC cells. (A,B) Fluorescence images of AGS and HGC27 cells after 24 h of NTP treatment stained with Hoechst 33342/PI, with blue representing the nucleus and red representing the PI infiltrating the cells. (C–E) AGS and HGC27 cells underwent apoptosis after treatment with NTP for 24 h, as did the percentages of cells undergoing early and late apoptosis. (F–H) Western blotting was used to measure the expression of the apoptotic proteins Bcl2, BAX, BDA, PARP and C-PARP in AGS and HGC27 cells treated with NTP for 24 h. GAPDH levels were used in a quantitative measurement of protein expression levels. Data are shown as the mean ± SD, with significant differences from the control group marked by *p < 0.05, **p < 0.01, ***p < 0.001.
NTP induces oxidative stress in GC cells. (A,B) Fluorescence staining of JC-1 in AGS and HGC27 cells after 24 h of NTP treatment showed red fluorescence representing JC-1 aggregates and green fluorescence representing JC-1 monomers caused by damaged mitochondria. (C–F) Following 24 h of NTP treatment, the ROS in AGS and HGC27 cells were stained with DCF, and ImageJ was used to assess the green fluorescence intensity. Data are shown as the mean ± SD, with significant differences from the control group marked by *p < 0.05, **p < 0.01, ***p < 0.001.
NTP disrupts redox homeostasis and activates the Keap1-Nrf2 pathway. (A–F) LDH, MDA, and GSH levels were measured in AGS and HGC27 cells following 24 h of NTP treatment. (G–H) After 24 h, AGS and HGC27 cells were cocultured in the presence or absence of 4 mM NAC, and MTT was used to assess the viability of the cells. (I–K) In AGS and HGC27 cells treated with NTP for 24 h, the Keap1, Nrf2, HO-1, NQO1, GCLM, and GPX4 proteins associated with oxidative stress were identified via Western blotting. GAPDH levels were used in a quantitative measurement of protein expression levels. Data are shown as the mean ± SD, with significant differences from the control group marked by *p < 0.05, **p < 0.01, ***p < 0.001.

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Nortriptyline hydrochloride, a potential candidate for drug repurposing, inhibits gastric cancer by inducing oxidative stress by triggering the Keap1-Nrf2 pathway
  • Article
  • Full-text available

March 2024

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59 Reads

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3 Citations

Chunyang Zhu

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Yangyang Lu

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Shasha Wang

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[...]

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Weiwei Qi

Effective drugs for the treatment of gastric cancer (GC) are still lacking. Nortriptyline Hydrochloride (NTP), a commonly used antidepressant medication, has been demonstrated by numerous studies to have antitumor effects. This study first validated the ability of NTP to inhibit GC and preliminarily explored its underlying mechanism. To begin with, NTP inhibits the activity of AGS and HGC27 cells (Human-derived GC cells) in a dose-dependent manner, as well as proliferation, cell cycle, and migration. Moreover, NTP induces cell apoptosis by upregulating BAX, BAD, and c-PARP and downregulating PARP and Bcl-2 expression. Furthermore, the mechanism of cell death caused by NTP is closely related to oxidative stress. NTP increases intracellular reactive oxygen species (ROS) and malondialdehyde (MDA) levels, decreasing the mitochondrial membrane potential (MMP) and inducing glucose (GSH) consumption. While the death of GC cells can be partially rescued by ROS inhibitor N-acetylcysteine (NAC). Mechanistically, NTP activates the Kelch-like ECH-associated protein (Keap1)—NF-E2-related factor 2 (Nrf2) pathway, which is an important pathway involved in oxidative stress. RNA sequencing and proteomics analysis further revealed molecular changes at the mRNA and protein levels and provided potential targets and pathways through differential gene expression analysis. In addition, NTP can inhibited tumor growth in nude mouse subcutaneous tumor models constructed respectively using AGS and MFC (mouse-derived GC cells), providing preliminary evidence of its effectiveness in vivo. In conclusion, our study demonstrated that NTP exhibits significant anti-GC activity and is anticipated to be a candidate for drug repurposing.

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Role of Kinetochore Scaffold 1 (KNL1) in Tumorigenesis and Tumor Immune Microenvironment in Pan-Cancer: Bioinformatics Analyses and Validation of Expression

October 2023

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23 Reads

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2 Citations

Purpose Kinetochore scaffold 1 (KNL1), a crucial protein during cell mitosis participating in cell division, was widely expressed in multiple kinds of cancers. However, the expression profile, the effect on cell biological function, tumor immune microenvironment, and predictive value of clinical prognosis in pan-cancer of KNL1 still require a comprehensive inquiry. Methods The mRNA and protein expression profile of KNL1 was validated in pan-cancer using different databases. Six algorithms were used to explore the correlation between KNL1 and immune infiltration and the relationship between KNL1 and tumor mutation burden (TMB), microsatellite instability (MSI), and TIDE score were calculated. The diagnostic and clinical prognostic predictive ability of KNL1 was assessed. Differentially expressed genes (DEGs) of KNL1 were screened out and function enrichment analyses were performed in pancreatic adenocarcinoma (PAAD), stomach adenocarcinoma (STAD), and bladder urothelial carcinoma (BLCA). Finally, 8 cases of pancreatic adenocarcinoma tissues and paired adjacent tissues were collected for immunohistochemical (IHC) staining and the histological score (H-score) was calculated. Real-time PCR was performed in gastric cancer and bladder cancer cell lines. Results KNL1 was abnormally upregulated in more than half of cancers across different databases. IHC and real-time PCR verified the up-regulated expression in cancer tissues in PAAD, gastric cancer, and BLCA. The satisfactory diagnostic value of KNL1 was indicated in 30 cancers and high KNL1 expression was associated with poorer overall survival (OS) in 12 cancers. The prognostic role of KNL1 as a predictive biomarker of PAAD was clarified. KNL1 played an active part in the cell cycle and cell proliferation. Moreover, KNL1 was likely to mold the Th2-dominant suppressive tumor immune microenvironment and was associated with TMB, MSI, and immune checkpoint-related genes in pan-cancer. Conclusion Our study elucidated the anomalous expression of KNL1 and revealed that KNL1 was a promising prognostic biomarker in pan-cancer.


TABLE 1 Continued
ICD formation is encouraged by HAIC-based chemotherapy drugs, which also affect a variety of immunells and boost anti-PD-1 mAb-induced immune responses against tumors. Additionally, sorafenib and lenvatinib were shown to modulate cytotoxic T-lymphocytes, and immunotherapy had synergistic anti-tumor effects. More specific definitions for the abbreviations are presented at the end of the article.
TABLE 2 Continued
The worthy role of hepatic arterial infusion chemotherapy in combination with anti-programmed cell death protein 1 monoclonal antibody immunotherapy in advanced hepatocellular carcinoma

October 2023

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32 Reads

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8 Citations

Systemic therapy remains the primary therapeutic approach for advanced hepatocellular carcinoma (HCC). Nonetheless, its efficacy in achieving control of intrahepatic lesions is constrained. Hepatic arterial infusion chemotherapy (HAIC) is a therapeutic approach that combines localized treatment with systemic antitumor effects, which aim is to effectively manage the progression of cancerous lesions within the liver, particularly in patients with portal vein tumor thrombosis (PVTT). Combining HAIC with anti-programmed cell death protein 1 (anti-PD-1) monoclonal antibody (mAb) immunotherapy is anticipated to emerge as a novel therapeutic approach aimed at augmenting the response inside the localized tumor site and achieving prolonged survival advantages. In order to assess the effectiveness, safety, and applicability of various therapeutic modalities and to address potential molecular mechanisms underlying the efficacy of HAIC-sensitizing immunotherapy, we reviewed the literature about the combination of HAIC with anti-PD-1 mAb therapies.


Global research trends on B7-H3 for cancer immunotherapy: A bibliometric analysis (2012-2022)

August 2023

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31 Reads

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3 Citations

Immunotherapy has revolutionized cancer treatment. B7-H3 is a promising target for cancer immunotherapy (CI). The present study aimed to utilize bibliometric methods to assess the current research status and explore future trends in the use of B7-H3 for CI. We collected publications related to B7-H3/CI from the Clarivate Web of Science Core Collection database. VOSviewer, Microsoft Excel, the bibliometrix R package, and an online platform were used to conduct qualitative and visualized analyses of the literature. A total of 555 papers were analyzed, revealing a significant increase in annual publications since 2018. The most productive countries were China and the USA, and the leading institutions were Soochow University and Sichuan University. Zang and Ferrone were the most popular authors. Among the journals, Frontiers in Immunology had the highest number of papers, whereas Clinical Cancer Research was the most influential. Historical citation analysis reveals the development of B7-H3/CI. Top-cited papers and keyword analyses were performed to highlight current hotspots in the domain. Using cluster analysis, we classified all keywords into four clusters: “immunotherapy,” “co-stimulatory molecule,” “B7 family,” and “PD-L1.” Finally, Trends analysis suggested that future research might focus on “chimeric antigen receptor,” “pathways,” and “targeting B7-H3.” This is the first bibliometric crosstalk analysis between B7-H3 and CI. Our study illustrates that the topic of B7-H3/CI is very popular and has great clinical implications and that the number of correlative publications will continue to increase. B7-H3-based CI may lead to new research trends.


Cepharanthine, a regulator of keap1-Nrf2, inhibits gastric cancer growth through oxidative stress and energy metabolism pathway

May 2023

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61 Reads

Cephalanthine (CEP), a bioactive compound derived from Stephania Cephalantha Hayata , is cytotoxic to various malignancies. However, the underlying mechanism of gastric cancer is unknown. CEP inhibited the cellular activity of gastric cancer AGS and HGC27 cell lines in this study. CEP induced apoptosis, reduced Bcl-2 expression, and increased cleaved caspase 3, cleaved caspase 9, Bax, and Bad expression. CEP caused a G2 cell cycle arrest and reduced cyclin D1 and cyclin-dependent kinases 2 (CDK2) expression. Meanwhile, it increased oxidative stress, decreased mitochondrial membrane potential, and enhanced reactive oxygen species (ROS) accumulation in AGS and HGC27 cells. Mechanistically, CEP inhibited Kelch-like ECH-associated protein (Keap1) expression while activating NF-E2 related factor 2 (Nrf2) expression, increasing transcription of Nrf2 target genes quinone oxidoreductase 1 (NQO1), heme oxygenase 1 (HMOX1), and glutamate-cysteine ligase modifier subunit (GCLM). Furthermore, a combined analysis of targeted energy metabolism and RNA sequencing revealed that CEP could alter the levels of metabolic substances such as D (+) - Glucose, D-Fructose 6-phosphate, citric acid, succinic acid, and pyruvic acid, thereby altering energy metabolism in AGS cells. In addition, CEP significantly inhibited tumor growth in MFC BALB/c nude mice in vivo , consistent with the in vitro findings. Overall, CEP can induce oxidative stress by regulating Nrf2/Keap1 and alter energy metabolism, resulting in anti-ovarian tumor effects. Our findings suggest a potential application of CEP in gastric cancer treatment.

Citations (4)


... Among them, cisplatin is widely used in clinical practice but faces challenges, including drug resistance, side effects, and the lack of optimized drug delivery systems [34]. Meanwhile, other drugs targeting oxidative stress are still in preclinical studies (nortriptyline, histone deacetylase (HDAC) inhibitors, topotecan, etc.) [35][36][37], or clinical trial stages (multivitamins, etc.) [38]. Hence, gaining a deeper understanding of redox-related biological events and exploring their applications in the precision treatment of gastric cancer may provide more effective therapeutic strategies. ...

Reference:

Oxidative Stress and Redox Signaling in Gastric Cancer: From Mechanisms to Therapeutic Implications
Nortriptyline hydrochloride, a potential candidate for drug repurposing, inhibits gastric cancer by inducing oxidative stress by triggering the Keap1-Nrf2 pathway

... The global burden of HCC underscores the urgent need for effective therapeutic strategies. Conventional treatments encompass surgical resection, liver transplantation, and radio-frequency ablation [8], whereas systemic therapies include chemotherapy and immunotherapy [9]. Despite advancements in diagnostic techniques and treatment modalities, managing HCC-particularly in the presence of PVTTremains challenging due to the liver's unique microenvironment, tumor heterogeneity, and the limited applicability of these methods in complex cases. ...

The worthy role of hepatic arterial infusion chemotherapy in combination with anti-programmed cell death protein 1 monoclonal antibody immunotherapy in advanced hepatocellular carcinoma

... Machine learning and deep learning have demonstrated strong performance in predictive tasks, enabling the inference of a wide range of gene mutations, molecular tumor subtypes, gene expression signatures, and traditional pathological biomarkers directly from conventional histology ( Figure 4, Table 2) [36]. These technologies play important roles in investigating the prognostic ability and the relationship between biological substances and pan-cancer, thus facilitating the discovery of potential biomarkers [37][38][39][40]. Al-Fatlawi et al. [41] predicted features with strong pan-cancer commonality and ranked them according to applicability, improving the versatility of the predicted biomarkers. ...

Role of Kinetochore Scaffold 1 (KNL1) in Tumorigenesis and Tumor Immune Microenvironment in Pan-Cancer: Bioinformatics Analyses and Validation of Expression

... These insights provide both researchers and clinicians with a comprehensive overview of the prevailing state of development within a specific research domain. Furthermore, bibliometrics has found extensive application in the fields of vaccine, nanomaterial and cancer (17)(18)(19)(20)(21). CiteSpace, developed by Prof. Meichao Chen, is an interactive analysis tool that allows for visual analysis through a combination of bibliometrics, visual analytics methods, and data mining algorithms (22). ...

Global research trends on B7-H3 for cancer immunotherapy: A bibliometric analysis (2012-2022)